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本地负载对电压源型换流器直流电压控制时间尺度振荡的影响

Local Load Effect on the DC Voltage Control Timescale Oscillation of Voltage Source Converters

作者 Yanjun Liu · Jiabing Hu · Wei He · Yunpeng Zhou · Meng Zhan
期刊 IEEE Transactions on Power Systems
出版日期 2025年8月
卷/期 第 41 卷 第 1 期
技术分类 系统并网技术
技术标签 弱电网并网 构网型GFM 跟网型GFL 模型预测控制MPC
相关度评分 ★★★★★ 5.0 / 5.0
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中文摘要

本文揭示了VSC新能源电站附近接入本地负载可能引发的新型小信号失稳振荡,聚焦PLL与终端电压控制、直流电压控制的耦合机制,指出负载效应会引入负阻尼转矩,导致DVC时间尺度下的未阻尼振荡,并提出针对性抑制策略,经MATLAB/Simulink和RT-LAB验证。

English Abstract

Voltage source converter (VSC)-interfaced renewable power plants are typically far from load centers, the weak grid condition presents significant stability risks. Extensive research has been conducted to analyze oscillations within the DC voltage control (DVC) timescale. However, most studies focus on scenarios where generators are connected to the grid through long transmission lines. More general scenarios, where loads are distributed along these transmission lines, have not received sufficient attention, potentially leaving undiscovered oscillation mechanisms. This paper finds a small-signal stability issue, which is an unexpected oscillation that may occur if local loads are connected near the VSC-based power plants. To comprehensively analyze this phenomenon, this paper takes the phase-locked loop (PLL) as the main object and analyzes the interaction between the terminal voltage control (TVC), DVC, and PLL. Initially, the complex coupling relationship is clarified by applying series expansion to the interaction paths between TVC and DVC. It is found that the load effect contributes to forming a crucial path that introduces the negative damping torque caused by TVC to PLL. Subsequently, analyses show that undamped oscillation risks exist under normal control parameters. A targeted control strategy is proposed for oscillation suppression. Verifications are conducted using MATLAB/Simulink and RT-LAB.
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SunView 深度解读

该研究直击阳光电源ST系列PCS、PowerTitan及大型组串式逆变器在弱电网+分布式负载场景(如工商业光储一体化项目)下的并网稳定性瓶颈。本地负载加剧PLL-TVC-DVC动态耦合,易诱发直流母线振荡,影响iSolarCloud平台实时调控精度。建议在ST/PowerTitan固件中嵌入自适应PLL带宽调节与DVC前馈补偿模块,并在iSolarCloud智能诊断中增加‘负载-振荡风险’预警标签,提升构网型光储系统在复杂配网中的鲁棒性。